TQP3M9037
TQP3M9037 is High Linearity LNA manufactured by Qorvo.
Description
The TQP3M9037 is a high-linearity, ultra-low noise gain block amplifier in a small 2 x 2 mm surface-mount package. At 1.95 GHz, the amplifier typically provides 20 d B gain, +35 d Bm OIP3, and 0.4 d B noise figure while drawing 70 m A current from a +5 V supply. This amplifier does not require a negative supply for operation and can be biased from a single positive supply ranging from +3.3 to +5 volts. The device is housed in a green/Ro HS-pliant industrystandard 2 x 2 mm package.
The TQP3M9037 is internally matched using a high performance E-p HEMT process and only requires four external ponents for operation from a single positive supply: an external RF choke and blocking/bypass capacitors. This low noise amplifier contains an internal active bias to maintain high performance over temperature and integrates a shut-down biasing capability to allow for operation for TDD applications.
The TQP3M9037 covers the 0.7 - 6.0 GHz frequency band and is targeted for wireless infrastructure. It is pin patible with the low-band, 0.4- 2.0 GHz TQP3M9036.
8 Pin 2X2 mm DFN Package
Product Features
- 0.7-6.0 GHz Operational Bandwidth
- Ultra Low Noise Figure, 0.4 d B NF at 1.95 GHz
- High Gain, 20 d B Gain at 1.95 GHz
- High Linearity, +35 d Bm Output IP3
- High Input Power Ruggedness, +22 d Bm CW
- Unconditionally Stable
- Integrated On-chip Matching, 50 Ohm In/Out
- Integrated Active Bias
- Integrated Shutdown Control Pin
- +3V to +5V Supply; Does Not Require
- Vgg
- Pin patible with Low-Band TQP3M9036
Functional Block Diagram
Pin 1 Reference Mark
NC 1 RF In 2
NC 3 NC 4
8 NC 7 RF Out 6 Shut Down 5 NC
Applications
- Repeaters
- Mobile Infrastructure
- LTE / WCDMA / CDMA / GSM
- General Purpose Wireless
- TDD or FDD Systems
Backside Paddle
- RF/DC GND Top View
Data Sheet July 25, 2017 | Subject to change without notice
Ordering Information
Part No.
Description
Ultra low noise, High IP3 LNA
TQP3M9037-PCB 0.7 - 6.0 GHz Evaluation Board
Standard T/R size = 2500...